Airborne fungal fragments and allergenicity

Brett J Green1, Euan R Tovey, Jason K Sercombe

  • 1Allergy and Clinical Immunology Branch, Health Effects Laboratory Division, National Institute for Occupational Safety and Health, Centers for Disease Control and Prevention, Morgantown, West Virginia 26505-2888, USA. Brett.Green@cdc.hhs.gov

Medical Mycology
|October 20, 2006
PubMed

Insights

Fungal fragments, not just spores, are significant sources of allergens in indoor environments. New immunodetection methods reveal their role in allergic sensitization and building-related diseases.

Area of Science:

  • Environmental Science
  • Immunology
  • Allergy Research

Background:

  • Indoor fungal exposure is linked to various health issues, including asthma and cognitive difficulties.
  • Current methods for assessing fungal exposure are limited, focusing mainly on identifiable species and spores.
  • The role of fungal fragments, including hyphae and fractured conidia, in allergic sensitization is poorly understood.

Purpose of the Study:

  • To develop and apply innovative immunodetection techniques to quantify larger fungal fragments as aeroallergen sources.
  • To investigate the presence and allergenic potential of airborne fungal fragments in indoor environments.
  • To establish a new paradigm for understanding fungal exposure and its health implications.

Main Methods:

  • Development of Halogen Immunoassay (HIA) for detecting antigens on airborne particles >1 micrometer using human immunoglobulin E (IgE).
  • Quantification of total airborne hyphae and comparison with conidia concentrations.
  • Immunostaining to identify allergen expression on hyphal fragments and conidia of various fungal genera.

Main Results:

  • Airborne hyphae were often more concentrated than conidia of individual allergenic genera.
  • Approximately 25% of hyphal fragments showed detectable allergen expression with heterogeneous IgE localization.
  • Ten previously uncharacterized genera of conidia were identified as sources of allergens.

Conclusions:

  • Larger fungal fragments, including hyphae and fractured conidia, significantly contribute to aeroallergen exposure.
  • Novel immunodetection techniques provide a new understanding of fungal exposure and allergic sensitization.
  • Further development of diagnostic tools, especially for submicron particles, is crucial for understanding building-related diseases.

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